
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
VERSION A0 DC-DC Battery Charger REGO 12V 60A QUICK GUIDE input output DC-DC Battery Charger Contents Package Contents •••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••• 01 Wiring Diagram •••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••• 02 Product Overview ••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••• 03 Installation •••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••• 04 LED Indicators ••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••• 14 Communication ••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••• 15 Operation & Maintenance ••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••••• 18 01 input output DC-DC Battery Charger Quick Guide × 1 Renogy Temperature Sensor × 1 (Model: RTSCC) IGN Signal Wire × 1Screws × 4 VERSION A0 DC-DC Battery Charger REGO 12V 60A QUICK GUIDE input output DC-DC Battery Charger Package Contents 02 Starting Battery or DC Generator Service Battery System + Negative Positive input output DC-DC Battery Charger + z This Quick Guide contains important installation, operation, and maintenance instructions for REGO 12V 60A DC-DC Battery Charger. Please read the Quick Guide carefully before using. z Illustrations in the Quick Guide are for reference only. z For more detailed instructions, please refer to the full user manual at renogy.com. z For additional support, please contact our customer service through renogy.com/contact-us/. Wiring Diagram 03 input output DC-DC Battery Charger IGN CANCAN BVSBTS DC-DC Battery Charger inputoutput DC-DC Battery Charger 3114 911651012789 2 No.PartNo.Part 1Mounting Holes7Negative Output Terminal 2Fault Status Indicator8Positive Output Terminal 3Battery Status Indicator9CAN Communication Ports 4Battery Type Setting Knob10IGN Signal Wire Port 5Positive Input Terminal11BVS (Battery Voltage Sensor) Port 6Negative Input Terminal12BTS (Battery Temperature Sensor) Port z Please inspect the battery charger for any visible damage including cracks, dents, deformation, and other visible abnormalities before installation. z There are no user serviceable parts inside the battery charger. Do not disassemble or attempt to repair it. Product OverviewWiring Diagram 04 Recommended Components Battery Scenario A: REGO Battery Kit Renogy REGO Lithium BatteryRenogy REGO System Combiner Box Battery Adapter Cable (output) ( Anderson PP75 to Anderson 120 Adapter Cable ) Battery Adapter Cable (input) ( Anderson PP75 to Ring Terminal Adapter Cable ) Anderson PP75 Anderson 120 Battery Scenario B: Normal Battery Kit Normal Battery with +/- Bolts Battery Adapter Cables (input / output) ( Anderson PP75 to Ring Terminal Adapter Cable ) + - Installation 0505 Installation *Optional Accessories *Battery Fuse (80A)*Fuse Cable *Battery Voltage Sensor (Model: RVSCC) *Optional Accessories Wrench (10mm)Wrench (14mm)Measuring TapeInsulation Tape 10mm 10mm 10mm 14mm 14mm 14mm 3 4 5 6 Installation 0606 Installation Mounting Location z Risk of explosion! Never install the battery charger in a sealed enclosure with flooded batteries! Do not install in a confined area where battery gases can accumulate. z Place the battery charger on a vertical surface protected from direct sunlight, high temperatures, and water. Make sure there is good ventilation. z The battery charger requires at least 6 inches (150mm) of clearance above and below for proper air flow. Ventilation is highly recommended if mounted in an enclosure. z If the Battery Adapter Cable or Solar Panel Extension Cable is not long enough, you can use more extension cables or reselect the position where the battery charger needs to be secured. DC-DC Battery Charger STEP-1.1 ≥150mm ≥5.91inch ≥150mm ≥5.91inch DC -DC Battery Charger STEP-1.2 Confirm the installation location. Measure the length of the cables connecting to the battery and solar panel so they can be connected to the battery charger. 0707 InstallationInstallation Battery Charger Wiring z Please refer to the user manual of the battery charger at renogy.com for the recommended wire gauge and length. z Please make sure that the connections of the Anderson connectors are tight and secure. inputoutput DC-DC Battery Charger inputoutput STEP-2.1 REGO Battery Kit Normal Battery Kit STEP-2.2 For the Output terminal, align the Battery Adapter Cable's Anderson PP75 connectors to the correct orientation and polarity. Bind the Anderson PP75 connectors by sliding the side grooves. output DC-DC Battery Charger STEP-2.3 inputoutput DC-DC Battery Charger input STEP-2.4 Insert the Anderson PP75 connectors into the Output terminal. For the Input terminal, align the Battery Adapter Cable's Anderson PP75 connectors to the correct orientation and polarity. STEP-2.5 inputoutput DC-DC Battery Charger STEP-2.6 Bind the Anderson PP75 connectors by sliding the side grooves. Insert the Anderson PP75 connectors into the Input terminal. 0808 Installation Service Battery Wiring z Please read the user manual of the service battery carefully before installation. z Identify the polarity (positive and negative) on the cables used for the batteries. A reverse polarity contact may damage the unit. z Select a suitable wrench or other tool when tightening the battery bolts to their rated specification. z Please ensure that the Anderson connectors are fully seated and/or the ring terminals are securely connected. Battery Scenario A: REGO Battery Kit z Please read the user manual of System Combiner Box carefully before wiring. z If the devices are connected to the Anderson connectors of the System Combiner Box, please install a 160A NH fuse in the top NH fu…
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RNG International Inc. Agent Authorization Letter 2022-12-12 Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 USA RE: LETTER OF AGENT AUTHORIZATION To Whom It May Concern: We, the undersigned, hereby authorize Shenzhen Most Technology Service Co., Ltd. to act on our behalf in all matters relating to application for equipment authorization, including the signing of all documents relating to these matters. We also hereby certify that no party to the application authorized hereunder is subject to the denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C.853(a). This agreement expires one year from the current date. Sincerely, Name: Jason jiang Position: CTO Company Name: RNG International Inc. Address: 5050 S Archibald Ave, Ontario, CA 91762, USA Tel / Fax 9095173598 /8885431164 E-Mail: [email protected]
RNG International Inc. Long Term Confidentiality Request Letter 2022.12.12 Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 USA RE: CONFIDENTIALITY REQUEST FOR (FCC ID: 2ANPBRBC1260DO) To Whom It May Concern: This letter serves as an official request for confidentiality under sections 0.457 and 0.459 of CFR 47. We have requested that the - e.g. Block diagram - e.g. SCH - e.g. Operational Description required to be submitted with this application be permanently withheld from public review. The above documents are company proprietary information that could never get into the possession of your competition. Please contact me if there is any information you may need. Sincerely, Name: Jason jiang Position: CTO Company Name: RNG International Inc. Address: 5050 S Archibald Ave, Ontario, CA 91762, USA Tel / Fax 9095173598 /8885431164 E-Mail: [email protected]
Model No.: RBC1260DO-12B FRONT VIEW OF SAMPLE BACK VIEW OF SAMPLE Model No.: RBC1260DO-12B LEFT VIEW OF SAMPLE RIGHT VIEW OF SAMPLE Model No.: RBC1260DO-12B TOP VIEW OF SAMPLE BOTTOM VIEW OF SAMPLE
Label Location Model: RBC1260DO-12B Rating: DC 12V, 70A, 840W FCC ID: 2ANPBRBC1260DO IC: 23590-RBC1260DO12B Manufacturer: RENOGY New Energy Co., Ltd. Address: Room 624-625, Taicang German Overseas Students Pioneer Park, 66 Ningbo East Road, Taicang Economic Development Zone.
Model No.: RBC1260DO-12B Page 1 of 4 INTERNAL PHOTO OF SAMPLE PCB INTERNAL PHOTO OF SAMPLE PCB Model No.: RBC1260DO-12B Page 2 of 4 INTERNAL PHOTO OF SAMPLE PCB INTERNAL PHOTO OF SAMPLE PCB Model No.: RBC1260DO-12B Page 3 of 4 INTERNAL PHOTO OF SAMPLE PCB INTERNAL PHOTO OF SAMPLE PCB Model No.: RBC1260DO-12B Page 4 of 4 INTERNAL PHOTO OF SAMPLE PCB Antenna Location
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 A B C CommentQuantityDesignator SMT _Capacitor_0603_50V_100pF_C0G_J14.0000C1, C3, C5, C10, C18, C21, SMT _Capacitor_0805_25V_10uF_X5R_K2.0000C2, C6 SMT _Capacitor_0603_50V_1nF_X7R_K4.0000C4, C30, C31, C88 V-chip Aluminum Electrolytic Capactors_100uF_M_25V_105°C _6.3*7.7mm_P=2.0mm_2000H_VZH 8.0000 C7, C11, C15, C19, C22, C26, C29, C34 SMT _Capacitor_0603_50V_100nF_X7R_K11.0000C8, C12, C16, C17, C20, C23, V-chip Aluminum Electrolytic Capactors__M_25V_125°C _8*10mm_P=3.1mm_4000H_HBW 1.0000C9 SMT _Capacitor_0603_25V_1uF_X5R_K9.0000C13, C45, C46, C47, C48, C143, V-chip Aluminum Electrolytic Capactors_220uF_M_35V_Φ 8*10 _P=3.1mm_105°C_2000H_VEJ 1.0000C14 SMT _Capacitor_0805_50V_4.7uF_X7R_K5.0000C24, C38, C40, C129, C130 SMT _Capacitor_0603_50V_330pF_X7R_K1.0000C27 SMT _Capacitor_1206_25V_22uF_X5R_K8.0000C35, C36, C37, C39, C125, SMT_Capacitor_0805_50V_4.7nF_X7R_K16.0000 C84, C85, C86, C87, C92, C93, C94, C95, C131, C132, C133, SMT _Socket_2.0_2×15P1.0000CON1 BAV21W _250V_200mA_SOD-1237.0000D1, D2, D3, D11, D12, D16, D26 EFM105 _300V_1A_35nS_SMA13.0000D4, D6, D9, D13, D14, D15, P20L45D _45V_2×10A_TO2523.0000D5, D7, D8 SMCJ33CA _1500W_33V_J_SMC2.0000D22, D23 5401 _0.5A_0.2W_-150V_40-200_SOT2310.0000Q1, Q2, Q3, Q5, Q9, Q10, Q14, 5551 _0.6A_0.3W_180V_50-250_SOT238.0000Q4, Q6, Q7, Q8, Q11, Q15, Q18, AO3407 _-4.1A_-30V_R042_P_SOT231.0000Q12 CRSS052N08N _120A_85V_R0046_N_TO-2631.0000Q13 LMBTA42LT1G _0.5A_0.25W_300V_50-250_SOT-232.0000Q19, Q20 HYG012N03LR1C2 _180A_30V_R0009_N_PPAK5*6_8L14.0000Q22, Q29, Q30, Q31, Q38, Q39, NCEP40T14G_140A_40V_R0016_DFN5X624.0000 Q23, Q24, Q25, Q26, Q27, Q28, Q32, Q33, Q34, Q35, Q36, Q37, SMT _Resistor_0603_100R_F_1/10W_50V13.0000R1, R6, R7, R149, R150, R151, SMT _Resistor_0603_47K_F_1/10W_50V3.0000R2, R29, R42 SMT _Resistor_0603_3K3_F_1/10W_50V11.0000R3, R4, R9, R12, R18, R25, SMT _Resistor_0603_100K_F_1/10W_50V9.0000R5, R14, R15, R28, R35, R41, SMT _Resistor_0603_1K6_F_1/10W_50V2.0000R8, R10 SMT _Resistor_0603_1K_F_1/10W_50V14.0000R11, R13, R47, R61, R70, R77, SMT_Resistor_0603_10K_F_1/10W_50V27.0000 R16, R17, R19, R20, R21, R22, R23, R24, R45, R50, R64, R78, SMT _Resistor_0805_0R_J_1/8W_150V1.0000R27 SMT _Resistor_0603_2K_F_1/10W_50V4.0000R32, R33, R51, R52 SMT _Resistor_1206_47K_F_1/4W_200V7.0000R34, R37, R39, R55, R62, R65, SMT _Resistor_0603_1M_J_1/10W_50V1.0000R38 SMT _Resistor_0805_10R_F_1/8W_150V1.0000R40 SMT _Resistor_2728_YLR28-4-50F-W_R050_F_4W1.0000R48 SMT _Resistor_1206_100R_F_1/4W_200V2.0000R49, R67 SMT _Resistor_0805_470K_J_1/8W_150V1.0000R53 SMT _Resistor_0805_150K_F_1/8W_150V1.0000R54 SMT _Resistor_0603_16K_F_1/10W_50V1.0000R56 SMT _Resistor_0805_100K_F_1/8W_150V4.0000R57, R58, R98, R99 SMT _Resistor_0603_499K_F_1/10W_50V1.0000R63 SMT _Resistor_0603_150K_F_1/10W_50V1.0000R66 SMT _Resistor_0603_20K_F_1/10W_50V1.0000R68 SMT _Resistor_0603_12K_F_1/10W_50V1.0000R69 SMT _Resistor_0603_4K7_F_1/10W_50V1.0000R71 SMT _Resistor_1206_3R6_J_1/4W_200V8.0000R72, R74, R75, R76, R117, BOM 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 A B C SMT_Resistor_0805_3R3_F_1/8W_150V40.0000 R85, R86, R87, R88, R89, R90, R93, R94, R100, R101, R102, R103, R104, R105, R106, R107, R108, R109, R110, R111, R112, SMT _Resistor_1206_0R_F_1/4W_200V1.0000R159 SMT _Resistor_1575_R0005_F_7W2.0000Rs1, Rs3 SMT _Resistor_1575_R0003_F_7W1.0000Rs2 SGM8276-2XS8G/TR _36V_SO83.0000U1, U4, U7 LR432BTLT1G _1.24V_SOT233.0000U3, U5, U8 UCC28C45DR _SO8_TI1.0000U9 SLM2186 _4A_SO-84.0000U10, U11, U12, U13 BZT52C16 _1/3W_15V3-17V1_SOD-1233.0000ZD1, ZD2, ZD4 BZT52C12 _1/3W_11V4-12V7_SOD-1231.0000ZD3 BZT52C3V3 _1/3W_3V1-3V5_SOD-1238.0000ZD5, ZD6, ZD7, ZD8, ZD9, ZD10, Aluminium electrolytic capacitor_1000uF_M_25V_105°C _12.5*20mm_P=5.0mm_10000H_RZW 21.0000 C55, C56, C57, C58, C59, C60, C64, C65, C66, C67, C80, C106, HMPP205J100IKAF _2uF_100V_18*15.5*9mm_P=15mm5.0000C61, C82, C89, C90, C91 BF22300300 _30A/32V10.0000F1, F2, F3, F4, F5, F6, F7, L_130090*2P_6.5uH_± 10% _2.2mm*3P*6T_42*32mm40*30*2.0mm 2.0000L1, L2 Connector_PP75_IN_2P_75A600V_8AWG_Red_65mm_Black_85mm 1.0000CON2 Connector_PP75_OUT_2P_75A600V_8AWG_Red_65mm_Black_85m m 1.0000CON3 XH2.54 _2P_180°1.0000P10 EE13_1mH_±10%_40:45:45_PC40_15*14*15.5mm_MD4830N06- T2 2.0000T22, T31 Copper _45mm*20mm*0.8mm_V1.01.0000Tcu EE22_10uH_± 20% _6:11:11:11:7_PC40_22*15.7*17.7mm_DC1260-T1 1.0000TT1 SMT_Capacitor_0603_50V_100nF_X7R_K24.0000 C1, C6, C8, C10, C20, C22, C26, C27, C28, C35, C36, C37, SMT _Capacitor_0805_25V_10uF_X5R_K6.0000C2, C3, C29, C31, C32, C34 SMT _Capacitor_0603_50V_22pF_COG_J2.0000C4, C5 SMT _Capacitor_0603_50V_100pF_C0G_J14.0000C7, C11, C19, C24, C38, C44, SMT _Capacitor_0603_50V_10nF_X7R_K7.0000C9, C17, C18, C23, C25, C52, SMT _Capacitor_0603_50V_1nF_X7R_K3.0000C14, C15, C16 SMT _Capacitor_0805_10V_22uF_X5R_M1.0000C21 SMT _Capacitor_0603_25V_1uF_X5R_K2.0000C30, C33 SMT _Capacitor_0603_50V_33pF_NPO_J1.0000C58 SMT _Socket_2.0_2×15P1.0000CON1 BAV99 _85V_200mA_SOT237.0000D1, D2, D3, D6, D7, D10, D11 LBAW56LT1G _70V_200mA_SOT-232.0000D8, D9 BAV21W _250V_200mA_SOD-1231.0000D12 FM-Z3535RGBA-SH2.0000DS1, DS2 SBR3A40SA _40V_3A_SMA2.0000F1, F2 5551 _0.6A_0.3W_180V_50-250_SOT232.0000Q1, Q2 SMT _Resistor_1206_10R_F_1/4W_200V2.0000R1, R39 SMT _Resistor_1210_20R_J_1/3W_200V2.0000R3, R5 SMT_Resistor_0603_1K_F_1/10W_50V22.0000 R4, R6, R12, R19, R20, R21, R24, R30, R33, R35, R44, R50, SMT _Resistor_0603_20K_F_1/10W_50V1.0000R8 SMT _Resistor_0603_4K3_F_1/10W_50V2.0000R9, R10 SMT _Resistor_0603_3K3_F_1/10W_50V8.0000R11, R18, R29, R31, R34, R37, SMT _Resistor_1206_100K_J_1/4W_200V4.0000R13, R23, R25, R26 SMT_Resistor_0603_10K_F_1/10W_50V33.0000 R14, R22, R27, R28, R38, R42, R46, R48, R52, R54, R56, R57, R58, R59, R60, R61, R62, R64, SMT _Resistor_1206_10K_F_1/4W_200V1.0000R15 SMT _Resistor_0603_10R_F_1/10W_50V1.0000R16 SMT _Resistor_…
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Shenzhen Most Technology Service Co., Ltd. No.5, 2nd Langshan Road, North District, Hi-tech Industrial Park, Nanshan, Shenzhen, Guangdong, China. RF Exposure Evaluation Report Report Reference No. ..................... : FCC ID.. ........................................... : MTWG22030133-H 2ANPBRBC1260DO Compiled by ( position+printed name+signature) .. : File administrators Alisa Luo Supervised by ( position+printed name+signature) .. : Test Engineer Sunny Deng Approved by ( position+printed name+signature) .. : Manager Yvette Zhou Date of issue ..................................... : March 11,2022 Representative Laboratory Name .: Shenzhen Most Technology Service Co., Ltd. Address ............................................ : No.5, 2nd Langshan Road, North District, Hi-tech Industrial Park, Nanshan, Shenzhen, Guangdong, China. Applicant’s name ............................ : RNG International Inc. Address ............................................ : 5050 S Archibald Ave, Ontario, CA 91762, USA Test specification/ Standard ..........: 47 CFR Part 1.1307 47 CFR Part 1.1310 KDB447498D01 General RF Exposure Guidance v06 TRF Originator .................................. : Shenzhen Most Technology Service Co., Ltd. Shenzhen Most Technology Service Co., Ltd. All rights reserved. This publication may be reproduced in whole or in part for non-commercial purposes as long as the Shenzhen Most Technology Service Co., Ltd. is acknowledged as copyright owner and source of the material. Shenzhen Most Technology Service Co., Ltd. takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. Test item description .....................: REGO 12V 60A DC-DC Battery Charger Trade Mark ....................................... : Manufacturer .................................... : RENOGY New Energy Co., Ltd. Model/Type reference....................... : RBC1260DO-12B Listed Models .................................. : N/A Modulation Type ............................... : GFSK Operation Frequency ........................ : From 2402MHz to 2480MHz Hardware Version .............................. HY-40R204P Software Version ............................... RGXNY_R2TC_04_01_20191105_V1.1.hex Rating ............................................... : DC 12V, 70A, 840W Result................................................ : PASS Report No.: MTWG22030133-H Page 2 of 5 T E S T R E P O R T Equipment under Test : REGO 12V 60A DC-DC Battery Charger Model /Type : RBC1260DO-12B Listed Models : N/A Remark N/A Applicant : RNG International Inc. Address : 5050 S Archibald Ave, Ontario, CA 91762, USA Manufacturer : RENOGY New Energy Co., Ltd. Address : Room 624-625, Taicang German Overseas Students Pioneer Park, 66 Ningbo East Road, Taicang Economic Development Zone. Test Result: PASS The test report merely corresponds to the test sample. It is not permitted to copy extracts of these test result without the written permission of the test laboratory. Report No.: MTWG22030133-H Page 3 of 5 1. R e v i s i o n H i s t o r y Revision Issue Date Revisions Revised By 00 2022-03-11 Initial Issue Alisa Luo Report No.: MTWG22030133-H Page 4 of 5 2. S A R E v a l u a t i o n 2.1 RF Exposure Compliance Requirement 2.1.1 Standard Requirement According to KDB447498D01 General RF Exposure Guidance v06 4.3.1. Standalone SAR test exclusion considerations Unless specifically required by the published RF exposure KDB procedures, standalone 1-g head or body and 10-g extremity SAR evaluation for general population exposure conditions, by measurement or numerical simulation, is not required when the corresponding SAR Exclusion Threshold condition, listed below, is satisfied. 2.1.2 Limits According to FCC Part1.1310: The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency (RF) radiation as specified in part1.1307(b) F= Frequency in MHz Friis Formula Friis transmission formula: Pd = (Pout*G)/(4* Pi * R 2) Where Pd = power density in mW/cm2 Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = distance between observation point and center of the radiator in cm Pd id the limit of MPE, 1 mW/cm2 . If we know the maximum gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. Report No.: MTWG22030133-H Page 5 of 5 2.1.3 EUT RF Exposure Antenna Gain: 1.5dBi Antenna Gain: The maximum Gain measured in fully anechoic chamber is 2.4 in linear scale. Output Power Into Antenna & RF Exposure Evaluation Distance: BLE GFSK Test channel Peak Output Power (dBm) Tune up tolerance (dBm) Maximum tune-up Power (dBm) Lowest(2402 MHz) -1.253 -1.253±1 -0.253 Middle(2440MHz) -0.250 -0.250±1 0.750 Highest(2480MHz) -1.221 -1.221±1 -1.221 BLE Worst case: GFSK Channel Maximum Peak Conducted Output Power (dBm) Maximum Peak Conducted Output Power (MW) Antenna Gain (dBi) Power Density at R = 20 cm (mW/cm2) Limit Result Highest(2440 MHz) 0.75 1.19 1.5 0.0003 1.0 Pass Note: 1) Refer to report MTWG22030128-R1 for EUT test Max Conducted average Output Power value. Note: 2) Pd = (Pout*G)/(4* Pi * R2)=(1.19*1.41)/(4*3.1416*20 2 )=0.0003 .......................THE END OF REPORT.........................
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Shenzhen Most Technology Service Co., Ltd. No.5, 2nd Langshan Road, North District, Hi-tech Industrial Park, Nanshan, Shenzhen, Guangdong, China. TEST REPORT FCC Rules Part 15.247 Report Reference No. ..................... : FCC ID.. .......................................... : MTWG22030133-R1 2ANPBRBC1260DO Compiled by ( position+printed name+signature) .. : File administrators Alisa Luo Supervised by ( position+printed name+signature) .. : Test Engineer Sunny Deng Approved by ( position+printed name+signature) .. : Manager Yvette Zhou Date of issue ..................................... : March 11,2022 Representative Laboratory Name .: Shenzhen Most Technology Service Co., Ltd. Address ............................................ : No.5, 2nd Langshan Road, North District, Hi-tech Industrial Park, Nanshan, Shenzhen, Guangdong, China. Applicant’s name ............................ : RNG International Inc. Address ............................................ : 5050 S Archibald Ave, Ontario, CA 91762, USA Test specification/ Standard ..........: FCC Rules Part 15.247 TRF Originator .................................. : Shenzhen Most Technology Service Co., Ltd. Shenzhen Most Technology Service Co., Ltd. All rights reserved. This publication may be reproduced in whole or in part for non-commercial purposes as long as the Shenzhen Most Technology Service Co., Ltd. is acknowledged as copyright owner and source of the material. Shenzhen Most Technology Service Co., Ltd. takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. Test item description ..................... : REGO 12V 60A DC-DC Battery Charger Trade Mark ....................................... : Manufacturer .................................... : RENOGY New Energy Co., Ltd. Model/Type reference....................... : RBC1260DO-12B Listed Models .................................. : N/A Modulation Type ............................... : GFSK Operation Frequency ........................ : From 2402MHz to 2480MHz Hardware Version .............................. HY-40R204P Software Version ............................... RGXNY_R2TC_04_01_20191105_V1.1.hex Rating ............................................... : DC 12V, 70A, 840W Result................................................ : PASS Report No.: MTWG22030133-R1 Page 2 of 32 T E S T R E P O R T Equipment under Test : REGO 12V 60A DC-DC Battery Charger Model /Type : RBC1260DO-12B Listed Models : N/A Remark N/A Applicant: Address: RNG International Inc. 5050 S Archibald Ave, Ontario, CA 91762, USA Manufacturer: RENOGY New Energy Co., Ltd. Address: Room 624-625, Taicang German Overseas Students Pioneer Park, 66 Ningbo East Road, Taicang Economic Development Zone. Test Result:PASS The test re port merely corresponds to the test sample. It is not permitted to copy extracts of these test result without the written permission of the test laboratory. Report No.: MTWG22030133-R1 Page 3 of 32 Contents 1. REVISION HISTORY ................................................................ 4 2. TEST STANDARDS .................................................................. 5 3. SUMMARY ............................................................................. 6 3.1. General Remarks 6 3.2. Product Description 6 3.3. Equipment Under Test 6 3.4. Short description of the Equipment under Test (EUT) 6 3.5. EUT operation mode 7 3.6. Block Diagram of Test Setup 7 3.7. Test Item (Equipment Under Test) Description* 7 3.8. Auxiliary Equipment (AE) Description 7 3.9 Antenna Information* 8 3.10. EUT configuration 8 3.11. Modifications 8 4. TEST ENVIRONMENT ............................................................... 9 4.1. Address of the test laboratory 9 4.2. Environmental conditions 9 4.3. Test Description 10 4.4. Statement of the measurement uncertainty 10 4.5. Equipments Used during the Test 11 5. TEST CONDITIONS AND RESULTS ............................................ 12 5.1. AC Power Conducted Emission ................................................................................... 12 5.2. Radiated Emission ........................................................................................................ 13 5.3. Maximum Peak Output Power ...................................................................................... 20 5.4. Power Spectral Density ................................................................................................ 21 5.5. 6dB Bandwidth and 99% Bandwidth ............................................................................ 23 5.6. Band Edge Compliance of RF Emission ...................................................................... 25 5.7. Spurious RF Conducted Emission ............................................................................... 27 5.8. Antenna Requirement ................................................................................................... 30 6. TEST SETUP PHOTOS OF THE EUT .......................................... 31 7. EXTERNAL AND INTERNAL PHOTOS OF THE EUT ....................... 32 Report No.: MTWG22030133-R1 Page 4 of 32 1. Revision History Revision Issue Date Revisions Revised By 00 2022-03-11 Initial Issue Alisa Luo Report No.: MTWG22030133-R1 Page 5 of 32 2. TEST STANDARDS The tests were performed according to following standards: The tests were performed according to following standards: FCC Rules Part 15.247: Frequency Hopping, Direct Spread Spectrum and Hybrid Systems that are in operation within the bands of 902-928 MHz, 2400-2483.5 MHz, and 5725-5850 MHz. ANSI C63.10:2013 : American National Standard for Testing Unlicensed Wireless Devices Report No.: MTWG22030133-R1 Page 6 of 32 3. SUMMARY 3.1. General Remarks Date of receipt of test sample : 2022.03.04 Testing commenced on : 2022.03.05 Testing concluded on : 2022.03.11 3.2. Product Description Product Name: REGO 12V 60A DC-DC Bat…
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Model No.: RBC1260DO-12B RE TEST SETUP
No.5, 2nd Langshan Road, North District, · Shenzhen, Guangdong · China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 940.00 µW |

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